Automatic conveying and inclining device for material frame

By designing an automatic material frame conveying and tilting device, the problem of packaging inconvenience caused by horizontal placement of the material frame was solved. The device enables automatic conveying and angle adjustment of the material frame, improving packaging efficiency and reducing the labor intensity of workers.

CN224241418UActive Publication Date: 2026-05-15FUJIAN WUYISHAN WANG XINJI TEA CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN WUYISHAN WANG XINJI TEA CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

In the food production process, especially in tea packaging, the horizontal placement of the material crates makes manual handling inconvenient, reduces packaging efficiency, and increases the labor intensity of workers.

Method used

Design an automatic material frame conveying and tilting device, including a support base, first and second conveyors, a vertical lifting mechanism, a lifting support platform, a third conveyor, and a tilting drive mechanism to realize automatic material frame conveying and tilt angle adjustment for convenient material handling.

Benefits of technology

It improves packaging efficiency, reduces the labor intensity of workers, and simplifies the material handling process during packaging.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224241418U_ABST
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Abstract

The utility model provides an automatic material frame conveying and inclining device which comprises a supporting base. An inclining station and an in-out conveying station which are adjacent to each other are formed on the supporting base. The first conveyor is arranged at the in-out conveying station; the second conveyor is arranged at the in-out conveying station, and the second conveyor is located above the first conveyor; the vertical lifting mechanism is arranged at the inclined station; one end of the lifting supporting table is connected with the vertical lifting mechanism; the side, away from the vertical lifting mechanism, of the third conveyor is hinged to the other end of the lifting supporting table, and material frame baffles are arranged on the two sides of the third conveyor; and the inclined driving mechanism is arranged on the lifting supporting table, and the inclined driving mechanism is connected with the third conveyor. The material taking device has the advantages that the packaging efficiency can be reliably improved, the labor intensity of workers is reduced, and the material taking operation in the packaging process can be facilitated.
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Description

[Technical Field]

[0001] This utility model relates to the field of food production equipment technology, and in particular to an automatic conveying and tilting device for a material frame. [Background Technology]

[0002] In the production process of food products, such as tea, after the tea leaves are packaged according to the required weight for each brew, they need to be received using crates, and then the crates and tea leaves are transported together to a warehouse for temporary storage. Additionally, to facilitate the sale of tea, the tea leaves also need to be packaged in boxes.

[0003] Currently, in the process of packaging tea bags, it is usually necessary to manually move the trays containing the tea bags to the workbench. This not only reduces packaging efficiency but also increases the labor intensity of workers. Furthermore, the trays can only be placed horizontally, making it inconvenient to retrieve the tea bags during the packaging process. In view of the aforementioned problems, the inventors of this invention conducted in-depth research on this issue, resulting in this invention. [Utility Model Content]

[0004] The technical problem to be solved by this utility model is to provide an automatic material frame conveying and tilting device, which can automatically convey the material frame and tilt it at the required angle according to actual needs, thereby not only improving packaging efficiency and reducing the labor intensity of workers, but also facilitating material handling during the packaging process.

[0005] This utility model is implemented as follows: an automatic material frame conveying and tilting device, comprising:

[0006] A support base, on which inclined stations and inlet / outlet conveying stations are formed adjacent to each other;

[0007] The first conveyor is installed at the inlet and outlet conveying station;

[0008] The second conveyor is installed at the inlet / outlet conveying station and is located above the first conveyor;

[0009] A vertical lifting mechanism, wherein the vertical lifting mechanism is installed at an inclined working position;

[0010] A lifting support platform, one end of which is connected to a vertical lifting mechanism, which drives the lifting support platform to move up and down.

[0011] The third conveyor is hinged to the other end of the lifting support platform on the side away from the vertical lifting mechanism, and material frame baffles are provided on both sides of the third conveyor.

[0012] A tilting drive mechanism is provided, which is mounted on the lifting support platform and connected to the third conveyor. The tilting drive mechanism drives the third conveyor to tilt.

[0013] Furthermore, the support base is provided with inclined stations and inlet / outlet conveying stations on both sides of the middle. Each inlet / outlet conveying station is provided with a first conveyor and a second conveyor. Each inclined station is provided with a vertical lifting mechanism, a lifting support platform, a third conveyor, and an inclined drive mechanism.

[0014] Furthermore, it also includes workbenches, with workbenches provided on both sides of the support base.

[0015] Furthermore, the first conveyor includes a first body, a first belt conveyor assembly, a first detection assembly, a first drive assembly, a first synchronous transmission shaft, and a first stop; the first body is provided with first belt conveyor assemblies on both sides, the first drive assembly is connected to any one of the first belt conveyor assemblies, and the two first belt conveyor assemblies are connected to each other through the first synchronous transmission shaft; the first body is provided with first detection assemblies at the input and output ends of the corresponding first belt conveyor assemblies, and the first body is provided with a first stop at the end away from the third conveyor;

[0016] The second conveyor includes a second body, a second belt conveyor assembly, a second detection assembly, a second drive assembly, a second synchronous drive shaft, and a second stop; the second body is provided with second belt conveyor assemblies on both sides, the second drive assembly is connected to any one of the second belt conveyor assemblies, and the two second belt conveyor assemblies are connected to each other through the second synchronous drive shaft; the second body is provided with second detection assemblies at the input and output ends of the corresponding second belt conveyor assemblies, and the second body is provided with a second stop at the end near the third conveyor.

[0017] Furthermore, the vertical lifting mechanism includes a support frame, a lifting drive cylinder, a vertical sliding assembly, a connecting shaft, sprockets, and a chain; the support frame is fixed on the support base, and both ends of the lifting support platform are slidably connected to the support frame through the vertical sliding assembly; the lower end of the lifting drive cylinder is connected to the support base, and the upper end of the lifting drive cylinder is connected to the middle of the connecting shaft; both ends of the connecting shaft are rotatably equipped with sprockets, each sprocket is engaged with a chain, and one end of the chain is connected to the support base, and the other end of the chain is connected to the lifting support platform.

[0018] Furthermore, the third conveyor includes a third body, a third belt conveyor assembly, a third detection assembly, a third drive assembly, and a third synchronous transmission shaft; the third body is provided with third belt conveyor assemblies on both sides, the third drive assembly is connected to any one of the third belt conveyor assemblies, and the two third belt conveyor assemblies are connected to each other through the third synchronous transmission shaft; the third body is provided with third detection assemblies at the input and output ends of the corresponding third belt conveyor assemblies; the third body is hinged to the lifting support platform, and the third body is provided with a third stop at the end away from the first and second conveyors.

[0019] Furthermore, the tilting drive mechanism includes a linear guide cylinder and a connecting rod; the linear guide cylinder is located on the top of the lifting support platform, one end of the connecting rod is hinged to the linear guide cylinder, and the other end of the connecting rod is hinged to the third conveyor. The linear guide cylinder drives the connecting rod to move the third conveyor to a horizontal state or tilt at the required angle.

[0020] Furthermore, at least two limiting rods are provided on the outer side of the material frame baffle, and the upper end of each limiting rod is bent inward to form a limiting hook.

[0021] Furthermore, a buffer is provided at the bottom of the lifting support platform.

[0022] By adopting the technical solution of this utility model, at least the following beneficial effects are achieved: The device is designed to include a first conveyor and a second conveyor positioned above and below the inlet / outlet conveying station. It also includes a vertical lifting mechanism, a lifting support platform, a third conveyor, and a tilting drive mechanism positioned at an inclined station. The lifting support platform is connected to the vertical lifting mechanism, one side of the third conveyor is connected to the lifting support platform, and the tilting drive mechanism is positioned on the lifting support platform and connected to the third conveyor. This allows for both automatic material transport by using the vertical lifting mechanism to drive the third conveyor to connect with the first or second conveyor, thus automatically transporting material-filled frames to the third conveyor or automatically removing empty frames from the third conveyor; and automatic material transport by using the tilting drive mechanism to tilt the material-filled frames at the required angle, facilitating material retrieval by workers. Therefore, by adopting the technical solution of this utility model, packaging efficiency can be reliably improved, reducing worker labor intensity, and facilitating material retrieval during the packaging process. [Attached Image Description]

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Figure 1 This is one of the three-dimensional structural diagrams of an automatic material frame conveying and tilting device according to this utility model;

[0025] Figure 2 This is the second three-dimensional structural diagram of an automatic material frame conveying and tilting device according to this utility model;

[0026] Figure 3 This is one of the overall assembly drawings of the third conveyor, tilting drive mechanism, lifting support platform and vertical lifting mechanism in this utility model;

[0027] Figure 4 This is the second overall assembly drawing of the third conveyor, tilting drive mechanism, lifting support platform and vertical lifting mechanism in this utility model;

[0028] Figure 5 This is a structural diagram of the vertical lifting mechanism in this utility model;

[0029] Figure 6 This is a detailed structural diagram of the first and second conveyors in this utility model.

[0030] Explanation of reference numerals in the attached figures:

[0031] Device 100;

[0032] Support base 1, tilting station 11, inlet / outlet conveying station 12;

[0033] First conveyor 2, first body 21, first belt conveyor assembly 22, first detection assembly 23, first drive assembly 24, first synchronous transmission shaft 25, first stop 26;

[0034] Second conveyor 3, second body 31, second belt conveyor assembly 32, second detection assembly 33, second drive assembly 34, second synchronous transmission shaft 35, second stop 36;

[0035] Vertical lifting mechanism 4, support frame 41, lifting drive cylinder 42, vertical sliding assembly 43, connecting shaft 44, sprocket 45, chain 46;

[0036] Lifting support platform 5, buffer 51;

[0037] Third conveyor 6, material frame baffle 61, third machine body 62, third belt conveyor assembly 63, third detection assembly 64, third drive assembly 65, third synchronous transmission shaft 66, third stop 67, limit stop bar 68, limit hook 681.

[0038] Inclined drive mechanism 7, linear guide cylinder 71, connecting rod 72;

[0039] Workbench 8.

Detailed Implementation Methods

[0040] To better understand the technical solution of this utility model, the technical solution of this utility model will be described in detail below with reference to the accompanying drawings and specific embodiments.

[0041] It should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used solely for the convenience of describing these embodiments and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature.

[0042] Please see Figures 1 to 6 As shown, this utility model discloses an automatic material frame conveying and tilting device 100, the device 100 comprising:

[0043] Support base 1, on which inclined work station 11 and inlet / outlet conveying work station 12 are formed adjacent to each other; by arranging the inclined work station 11 and inlet / outlet conveying work station 12 adjacent to each other, the equipment on the inclined work station 11 and inlet / outlet conveying work station 12 can be connected to each other.

[0044] The first conveyor 2 is installed at the inlet / outlet conveying station 12;

[0045] The second conveyor 3 is installed at the inlet / outlet conveying station 12 and is located above the first conveyor 2. In specific use, the first conveyor 2 is used to output empty material frames, and the second conveyor 3 is used to feed in material frames containing materials, such as packaged tea bags.

[0046] Vertical lifting mechanism 4, which is installed at the inclined work position 11;

[0047] The lifting support platform 5 has one end connected to the vertical lifting mechanism 4. The vertical lifting mechanism 4 drives the lifting support platform 5 to move up and down, thereby driving the third conveyor 6 to connect with the first conveyor 2 or the second conveyor 3.

[0048] The third conveyor 6 is hinged to the other end of the lifting support platform 5 on the side away from the vertical lifting mechanism 4, so that the third conveyor 6 can rotate relative to the lifting support platform 5, thereby realizing the rotation of the third conveyor 6 to a horizontal state or tilting to the required angle. Material frame baffles 61 are provided on both sides of the third conveyor 6. During operation, the material frame baffles 61 can be used to block the material frame, so that the material frame will not fall off the third conveyor 6 when the third conveyor 6 tilts the material frame to the required angle.

[0049] The tilting drive mechanism 7 is installed on the lifting support platform 5. The tilting drive mechanism 7 is connected to the third conveyor 6 and drives the third conveyor 6 to tilt. After tilting, the third conveyor 6 can tilt the material frame containing the material at a certain angle, so that the staff can grab the material from the material frame and put it into the packaging box.

[0050] This utility model, through the design of the device 100, includes a first conveyor 2 and a second conveyor 3 arranged above and below the inlet and outlet conveying station 12. It also includes a vertical lifting mechanism 4, a lifting support platform 5, a third conveyor 6, and an inclined drive mechanism 7 arranged on the inclined station 11. The lifting support platform 5 is connected to the vertical lifting mechanism 4, one side of the third conveyor 6 is connected to the lifting support platform 5, and the inclined drive mechanism 7 is arranged on the lifting support platform 5 and connected to the third conveyor 6. In practical use, the vertical lifting mechanism 4 can drive the third conveyor 6 to connect with the first conveyor 2 or the second conveyor 3, thereby automatically conveying the material-filled frame to the third conveyor 6 or automatically sending out the empty material frame from the third conveyor 6, thus realizing automatic material frame conveying; at the same time, the tilting drive mechanism 7 can drive the third conveyor 6 to tilt the material-filled frame at the required angle, so that workers can grab the material from the frame. Therefore, by adopting the technical solution of this utility model, not only can packaging efficiency be reliably improved and the labor intensity of workers reduced, but the material handling operation during the packaging process can also be facilitated.

[0051] In some embodiments of this utility model, inclined stations 11 and inlet / outlet conveying stations 12 are provided on both sides of the middle of the support base 1. Each inlet / outlet conveying station 12 is equipped with a first conveyor 2 and a second conveyor 3. Each inclined station 11 is equipped with a vertical lifting mechanism 4, a lifting support platform 5, a third conveyor 6, and an inclined drive mechanism 7. By providing inclined stations 11 and inlet / outlet conveying stations 12 on both sides of the middle of the support base 1, a single device 100 can form two independent packaging production lines, which helps to improve production efficiency.

[0052] In this utility model, in order to facilitate the staff to grab materials for packaging, the device 100 also includes a workbench 8. The support base 1 is provided with workbenches 8 on both sides. When in use, you only need to place the packaging box on the workbench 8 first, and then grab the material from the material frame containing the material and put it into the packaging box.

[0053] Please refer to the following embodiments of this utility model. Figure 6 As shown, in order to enable the first conveyor 2 to output empty material frames more flexibly, the first conveyor 2 includes a first body 21, a first belt conveyor assembly 22, a first detection assembly 23, a first drive assembly 24, a first synchronous transmission shaft 25, and a first stop 26. The first body 21 has first belt conveyor assemblies 22 on both sides. The first drive assembly 24 is connected to any one of the first belt conveyor assemblies 22 to drive one of the first belt conveyor assemblies 22 to work. The two first belt conveyor assemblies 22 are connected by the first synchronous transmission shaft 25, enabling them to work synchronously under the action of the first synchronous transmission shaft 25, thereby realizing the conveying function. The first body 21 has first detection assemblies 23 at the input and output ends corresponding to the first belt conveyor assemblies 22 to detect the material frames. The first body 21 has a first stop 26 at the end furthest from the third conveyor 6 to stop the material frames. In a specific implementation of this invention, the first driving component 24 is a drive motor; the first detection component 23 is a sensor, specifically a photoelectric sensor, proximity sensor, etc.; the first stop 26 can specifically be a blocking cylinder, with the movable end of the blocking cylinder facing upwards. When the movable end of the blocking cylinder extends upwards, it can block the conveying of the material frame, and when the movable end of the blocking cylinder retracts downwards, it can realize the normal conveying of the material frame. This invention, by setting the first belt conveyor components 22 on both sides of the first machine body 21, allows for the convenient placement of the first detection component 23 and the first stop 26 between the two first belt conveyor components 22; simultaneously, the two first belt conveyor components 22 are connected through the first synchronous transmission shaft 25, so that during operation, only one first driving component 24 is needed to drive the two first belt conveyor components 22 to work synchronously, which simplifies the overall structure and reduces costs.

[0054] During operation, when the vertical lifting mechanism 4 lowers the third conveyor 6 and the empty material frame together with the first conveyor 2, and the third conveyor 6 connects with the first conveyor 2, the third conveyor 6 transports the empty material frame to the first conveyor 2. Simultaneously, when the first detection component 23 on the first conveyor 2 detects the empty material frame entering the first conveyor 2, it controls the first stop 26 to rise, so that after the first conveyor 2 transports the empty material frame to the designated position, the first stop 26 can block the empty material frame. Furthermore, the device 100 can be used in conjunction with a receiving trolley (not shown). When the receiving trolley connects with the first conveyor 2, it controls the first stop 26 to descend, and the empty material frame is transported to the receiving trolley via the first conveyor 2.

[0055] Please refer to the following embodiments of this utility model. Figure 6 As shown, in order to enable the second conveyor 3 to more flexibly transport the material-filled frame, the second conveyor 3 includes a second body 31, a second belt conveyor assembly 32, a second detection assembly 33, a second drive assembly 34, a second synchronous transmission shaft 35, and a second stop 36. The second body 31 has second belt conveyor assemblies 32 on both sides. The second drive assembly 34 is connected to any one of the second belt conveyor assemblies 32 to drive one of them. The two second belt conveyor assemblies 32 are connected by the second synchronous transmission shaft 35, enabling them to work synchronously under the action of the shaft, thus achieving the conveying function. The second body 31 has second detection assemblies 33 at the input and output ends corresponding to the second belt conveyor assemblies 32 to detect the material frame. The second body 31 has a second stop 36 at one end near the third conveyor 6 to stop the material frame. In a specific implementation of this invention, the second driving component 34 is a drive motor; the second detection component 33 is a sensor, specifically a photoelectric sensor, proximity sensor, etc.; the second stop 36 can specifically be a blocking cylinder, with the moving end of the blocking cylinder facing upwards. This invention, by setting the second belt conveyor components 32 on both sides of the second body 31, allows for convenient placement of the second detection component 33 and the second stop 36 between the two second belt conveyor components 32; simultaneously, connecting the two second belt conveyor components 32 via a second synchronous transmission shaft 35 simplifies the overall structure and reduces costs, as only one second driving component 34 is needed to drive both second belt conveyor components 32 synchronously during operation.

[0056] In operation, the second conveyor 3 of this invention uses a trolley to transport a material-filled frame to the second conveyor 3. When the second detection component 33 on the second conveyor 3 detects that the material frame has entered the second conveyor 3, it controls the second stop 36 to rise, so that after the second conveyor 3 has transported the material-filled frame to the designated position, the second stop 36 can temporarily block the frame. After the third conveyor 6 is connected to the second conveyor 3, the second stop 36 is controlled to fall, and the material-filled frame is transported to the third conveyor 6 through the second conveyor 3.

[0057] Please refer to the following embodiments of this utility model. Figure 5 As shown, the vertical lifting mechanism 4 includes a support frame 41, a lifting drive cylinder 42, a vertical sliding assembly 43, a connecting shaft 44, sprockets 45, and a chain 46. The support frame 41 is fixed on the support base 1. Both ends of the lifting support platform 5 are slidably connected to the support frame 41 via the vertical sliding assembly 43, allowing the lifting support platform 5 to rise and fall smoothly relative to the support frame 41. The lower end of the lifting drive cylinder 42 is connected to the support base 1, and the upper end of the lifting drive cylinder 42 is connected to the middle of the connecting shaft 44. Both ends of the connecting shaft 44 are rotatably equipped with sprockets 45, and each sprocket 45 is engaged with a chain 46. One end of the chain 46 is connected to the support base 1, and the other end of the chain 46 is connected to the lifting support platform 5. By adopting the above-mentioned structural design of the vertical lifting mechanism 4, the stability of the lifting support platform 5 during the lifting process of driving the third conveyor 6 can be guaranteed.

[0058] When the vertical lifting mechanism 4 of this utility model is in operation, if it is necessary to drive the lifting support platform 5 to drive the third conveyor 6 to descend, it is only necessary to control the lifting drive cylinder 42 to drive the connecting shaft 44 to descend. When the connecting shaft 44 descends, the chain 46 will first loosen. At the same time, the lifting support platform 5 and the third conveyor 6 will slide down under the action of gravity and tighten the chain 46 again, thereby achieving descent. When it is necessary to drive the lifting support platform 5 to drive the third conveyor 6 to rise, it is only necessary to control the lifting drive cylinder 42 to push the connecting shaft 44 to rise. When the connecting shaft 44 rises, it will drive the chain 46 to pull the lifting support platform 5 and the third conveyor 6 upward together, thereby achieving ascent.

[0059] Furthermore, the bottom of the lifting support platform 5 is provided with a buffer 51, so that the vertical lifting mechanism 4 can use the buffer 51 to buffer the movement of the third conveyor 6 and the empty material frame during the descent.

[0060] In some embodiments of this utility model, please refer specifically to 3 and Figure 4As shown, the third conveyor 6 includes a third body 62, a third belt conveyor assembly 63, a third detection assembly 64, a third drive assembly 65, and a third synchronous transmission shaft 66. The third body 62 has third belt conveyor assemblies 63 on both sides. The third drive assembly 65 is connected to any one of the third belt conveyor assemblies 63 to drive one of them. Two third belt conveyor assemblies 63 are connected by the third synchronous transmission shaft 66, enabling the two third belt conveyor assemblies 63 to operate. The material frame can work synchronously under the action of the third synchronous drive shaft 66, thereby realizing the conveying function. The third body 62 is equipped with a third detection component 64 at both the input and output ends corresponding to the third belt conveyor assembly 63, to detect the material frame. The third body 62 is hinged to the lifting support platform 5, allowing the third body 62 to rotate relative to the lifting support platform 5. A third stop 67 is provided at the end of the third body 62 away from the first conveyor 2 and the second conveyor 3, to stop the material frame. In a specific implementation of this invention, the third drive assembly 65 is a drive motor; the third detection component 64 is a sensor, specifically a photoelectric sensor, proximity sensor, etc.; and the third stop 67 can specifically be a fixed stop bar. This invention provides third belt conveyor assemblies 63 on both sides of the third body 62. This design allows for the convenient placement of a third detection assembly 64 and a third stop 67 between the two third belt conveyor assemblies 63. Furthermore, by connecting the two third belt conveyor assemblies 63 via a third synchronous drive shaft 66, it is possible to drive the two third belt conveyor assemblies 63 synchronously using only a third drive assembly 65 during operation, thereby simplifying the overall structure and reducing costs.

[0061] In operation, when the third conveyor 6 is in a horizontal state and connected to the first conveyor 2, it can transport empty material frames to the first conveyor 2; when the third conveyor 6 is in a horizontal state and connected to the second conveyor 3, it can take the material frame containing the material from the second conveyor 3 and transport the material frame to the position blocked by the third stop 67.

[0062] In some embodiments of this utility model, the tilting drive mechanism 7 includes a linear guide cylinder 71 and a connecting rod 72. The linear guide cylinder 71 is disposed on the top of the lifting support platform 5. One end of the connecting rod 72 is hinged to the linear guide cylinder 71, and the other end of the connecting rod 72 is hinged to the third conveyor 6. The linear guide cylinder 71 drives the connecting rod 72 to move the third conveyor 6 to a horizontal state or tilt at the required angle. Specifically, when the linear guide cylinder 71 drives the connecting rod 72 to push the third conveyor 6 forward, the third conveyor 6 can be tilted at the required angle; and when the linear guide cylinder 71 drives the connecting rod 72 to pull the third conveyor 6 backward, the third conveyor 6 can be in a horizontal state.

[0063] In some embodiments of this utility model, at least two limiting rods 68 are also provided on the outer side of the material frame baffle 61. The upper end of each limiting rod 68 is bent inward to form a limiting hook 681. In this way, when the material frame containing the material is in an inclined state, the limiting hook 681 of the limiting rod 68 can be used to hook the upper end of the material frame, so that the material frame will not fall off the third conveyor 6.

[0064] While specific embodiments of the present invention have been described above, those skilled in the art should understand that the specific embodiments described are merely illustrative and not intended to limit the scope of the present invention. Equivalent modifications and variations made by those skilled in the art in accordance with the spirit of the present invention should be covered within the scope of protection of the claims of the present invention.

Claims

1. An automatic conveying and tilting device for a material frame, characterized in that, include: A support base, on which inclined stations and inlet / outlet conveying stations are formed adjacent to each other; The first conveyor is installed at the inlet and outlet conveying station; The second conveyor is installed at the inlet / outlet conveying station and is located above the first conveyor; A vertical lifting mechanism, wherein the vertical lifting mechanism is installed at an inclined working position; A lifting support platform, one end of which is connected to a vertical lifting mechanism, which drives the lifting support platform to move up and down. The third conveyor is hinged to the other end of the lifting support platform on the side away from the vertical lifting mechanism, and material frame baffles are provided on both sides of the third conveyor. A tilting drive mechanism is provided, which is mounted on the lifting support platform and connected to the third conveyor. The tilting drive mechanism drives the third conveyor to tilt.

2. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: The support base has inclined stations and inlet / outlet conveying stations on both sides of the middle. Each inlet / outlet conveying station is equipped with a first conveyor and a second conveyor. Each inclined station is equipped with a vertical lifting mechanism, a lifting support platform, a third conveyor, and an inclined drive mechanism.

3. The automatic conveying and tilting device for a material frame as described in claim 2, characterized in that: It also includes workbenches, with workbenches provided on both sides of the support base.

4. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: The first conveyor includes a first body, a first belt conveyor assembly, a first detection assembly, a first drive assembly, a first synchronous transmission shaft, and a first stop; the first body is provided with first belt conveyor assemblies on both sides, the first drive assembly is connected to any one of the first belt conveyor assemblies, and the two first belt conveyor assemblies are connected to each other through the first synchronous transmission shaft; the first body is provided with first detection assemblies at the input and output ends of the corresponding first belt conveyor assemblies, and the first body is provided with a first stop at the end away from the third conveyor; The second conveyor includes a second body, a second belt conveyor assembly, a second detection assembly, a second drive assembly, a second synchronous drive shaft, and a second stop; the second body is provided with second belt conveyor assemblies on both sides, the second drive assembly is connected to any one of the second belt conveyor assemblies, and the two second belt conveyor assemblies are connected to each other through the second synchronous drive shaft; the second body is provided with second detection assemblies at the input and output ends of the corresponding second belt conveyor assemblies, and the second body is provided with a second stop at the end near the third conveyor.

5. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: The vertical lifting mechanism includes a support frame, a lifting drive cylinder, a vertical sliding assembly, a connecting shaft, sprockets, and a chain. The support frame is fixed on a support base, and both ends of the lifting support platform are slidably connected to the support frame via the vertical sliding assembly. The lower end of the lifting drive cylinder is connected to the support base, and the upper end of the lifting drive cylinder is connected to the middle of the connecting shaft. Both ends of the connecting shaft are rotatably equipped with sprockets, each sprocket meshing with a chain. One end of the chain is connected to the support base, and the other end of the chain is connected to the lifting support platform.

6. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: The third conveyor includes a third body, a third belt conveyor assembly, a third detection assembly, a third drive assembly, and a third synchronous transmission shaft; the third body is provided with third belt conveyor assemblies on both sides, the third drive assembly is connected to any one of the third belt conveyor assemblies, and the two third belt conveyor assemblies are connected to each other through the third synchronous transmission shaft; the third body is provided with third detection assemblies at the input and output ends of the corresponding third belt conveyor assemblies; the third body is hinged to the lifting support platform, and the third body is provided with a third stop at the end away from the first and second conveyors.

7. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: The tilting drive mechanism includes a linear guide cylinder and a connecting rod; the linear guide cylinder is located on the top of the lifting support platform, one end of the connecting rod is hinged to the linear guide cylinder, and the other end of the connecting rod is hinged to the third conveyor. The linear guide cylinder drives the connecting rod to move the third conveyor to a horizontal state or tilt at the required angle.

8. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: At least two limiting rods are also provided on the outer side of the material frame baffle, and the upper end of each limiting rod is bent inward to form a limiting hook.

9. The automatic conveying and tilting device for a material frame as described in claim 1, characterized in that: A buffer is provided at the bottom of the lifting support platform.